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Resistance spot welding of dissimilar DP600 and DC54D steels

机译:不同DP600和DC54D钢的电阻点焊

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The microstructure in the fusion zone (FZ) was determined to be full lath martensite because of the high cooling rate. The heat-affected zone (HAZ) of DP600 was divided into coarse-grained, fine-grained, and inter-critical zones, and the volume fraction of martensite in HAZ was higher than that in the DP600 base metal (BM). The HAZ of DC54D was characterized by the presence of intensive ferrite. As the welding current, welding time, and electrode force increased, the tensile-shear strength of the welded spot experienced two stages of a notable increase and a subsequent decrease. The maximum value of 6.59 kn was obtained at a welding current of 9 kA, welding time of 14 cycles, and electrode force of 2.6 kn. Interfacial fracture occurred because of the small nugget diameter. Plug failure took place along the plastic deformed DC54D dominated by abnormally grown grains discovered from the interface of HAZ/BM through electron back-scattered diffraction. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于高冷却速率,确定融合区(FZ)中的微观结构是全身马氏体。将DP600的热影响区域(HAZ)分为粗粒,细粒细粒,临界间区域,HAZ中马氏体的体积分数高于DP600贱金属(BM)中的马氏体。 DC54D的HAZ的特征在于存在密集的铁氧体。作为焊接电流,焊接时间和电极力增加,焊接点的拉伸剪切强度经历了两个显着增加的两个阶段和随后的减少。在9ka的焊接电流,14个循环的焊接时间和2.6kn的电极力的焊接电流下获得最大值。由于块状小而发生界面骨折。沿着从HAZ / BM界面通过电子背散衍射发现的异常种植的晶粒,沿着塑料变形DC54D进行了塑料变形DC54D。 (c)2016 Elsevier B.v.保留所有权利。

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